Author:
Chadnova Eva,Reynaud Alexandre,Clavagnier Simon,Hess Robert F.
Abstract
AbstractOcular dominance can be modulated by short-term monocular deprivation. This changes the contribution that each eye makes to binocular vision, an example of adult cortical neuroplasticity. Optical imaging in primates and psychophysics in humans suggest these neuroplastic changes occur in V1. Here we use brain imaging (MEG) in normal adults to better understand the nature of these neuroplastic changes. The results suggest that short-term monocular deprivation, whether it be by an opaque or translucent patch, modulates dichoptic inhibitory interactions in a reciprocal fashion; the unpatched eye is inhibited, the patched eye is released from inhibition. These observations locate the neuroplastic changes to a level of visual processing where there are interocular inhibitory interactions prior to binocular combination and help to explain why both binocular rivalry and fusional tasks reveal them.
Publisher
Springer Science and Business Media LLC
Reference29 articles.
1. Sato, M. & Stryker, M. P. Ocular dominance plasticity. Journal of Neuroscience 28(41), 10278–10286 (2008).
2. Lunghi, C., Burr, D. C. & Morrone, C. Brief periods of monocular deprivation disrupt ocular balance in human adult visual cortex. Current Biology, 21(14), R538–R539 (2011).
3. Zhou, J., Clavagnier, S. & Hess, R. F. Short-term monocular deprivation strengthens the patched eye’s contribution to binocular combination. Journal of vision, 13(5), 12–12 (2013).
4. Begum, M. & Tso, D. Shifts in interocular balance resulting from short-term monocular deprivation in adult macaque visual cortex are not magno-dominated. Journal of Vision, 16(12), 1328 (2016).
5. Zhou, J., Reynaud, A. & Hess, R. F. Real-time modulation of perceptual eye dominance in humans. Proceedings of the Royal Society of London B: Biological Sciences, 281(1795), 20141717 (2014).
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